Exact(2)
An example will illustrate how this frame creation allows practitioners to approach today's open, complex, dynamic, networked problems in new and fruitful ways.
While I cannot tell you in advance what ideas will emerge from the interactions between these remarkable people, I can assure you that they will give our students a master class in the kind of leadership demanded by the networked problems the world faces: They have turned challenges into opportunities, which is the very essence of resilience.
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The main difficulty in this networked control problem is that, a sliding mode surface cannot be designed based on quantized outputs q y(t)) directly since q y(t)) is a piecewise constant and is not continuous in the quantizer switching times.
Motivated by the above technological advances and the lack of methods to design control systems that utilize hybrid communication networks, in the present work, we present a novel two-tier control architecture for networked process control problems that involve nonlinear processes and heterogeneous measurements consisting of continuous measurements and asynchronous, delayed measurements.
This paper addresses the networked H∞ filtering problem for time-delay systems with quadratically inner-bounded nonlinearities, where the different output sub-vectors of the systems are sampled respectively by sensor groups with different sampling periods (i.e., multirate sampling or MRS).
The main purpose of this paper is to reveal how to re-formulate the input design problem for networked systems as an input design problem for feedback control systems.
In this section, we will discuss the applications of PF algorithms to the filtering problems of networked systems, highlighting how the network-induced phenomena are treated by particle filters and how, in networked systems, local particle filters work coordinately to accomplish the state estimation task with an affordable communication cost.
In this section, we will mainly focus on state estimation problems for networked systems, i.e., we will study how some specific problems arising in networked systems are treated and how different sensor nodes operate coordinately to provide an accurate estimation of the target state.
Packet dropout Filtering problems for networked systems with packet dropout have also received considerable research attention.
This paper investigates group consensus problems in networked multi-agent systems (NMAS) with communication delays.
This paper is concerned with the adaptive finite-time bipartite consensus problems for networked second-order multi-agent systems with antagonistic interactions and unknown external disturbances.
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